High-nickel material coated with aluminum and lithium silicate on surface and doped with fluorine on surface layer and preparation method
A lithium aluminum silicate and surface coating technology, which is applied in the direction of electrical components, battery electrodes, circuits, etc., can solve the problem of not taking into account the lithium ion and electronic conductivity characteristics of the coating layer, restricting the electrochemical performance of high-nickel ternary materials, Problems such as the decline of electronic conductivity of materials, to achieve the effect of low cost, simple preparation process, and industrialization
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Embodiment 1
[0048] The preparation method of the surface-coated lithium aluminum silicate and the high-nickel material doped with fluorine in the surface layer of this embodiment is carried out according to the following steps:
[0049] (1) Take by weighing an appropriate amount of aluminum n-butoxide and ethyl silicate to be dissolved in ethanol according to an equimolar ratio, add ethanolamine with an equimolar amount of aluminum n-butoxide as a dispersant, obtain a clear and transparent solution after fully stirring, and Use deionized water to set the volume to 0.1mol / L in the volumetric flask; calculate and weigh a certain mass of 811-type nickel-cobalt-manganese ternary cathode material precursor according to the mass ratio of 1% of the coating amount of lithium aluminum silicate, and stir at room temperature mix thoroughly;
[0050] (2) drying the mixture obtained in step (1) under vacuum conditions, pre-calcining the dried material at 600° C. for 6 hours in an air atmosphere, and t...
Embodiment 2
[0059] The preparation method of the surface-coated lithium aluminum silicate and the high-nickel material doped with fluorine in the surface layer of this embodiment is carried out according to the following steps:
[0060] (1) Weigh a certain mass of 811-type nickel-cobalt-manganese ternary positive electrode material precursor, add aluminum oxide and silicon dioxide in equimolar ratios according to the 1% mass ratio of aluminum silicate coating amount, and Stir to mix the mixture thoroughly;
[0061] (2) After pre-calcining the obtained mixture at 600° C. for 6 hours in an air atmosphere, sieve to obtain the undersize;
[0062] (3) The obtained undersize is mixed with lithium hydroxide at a molar ratio of 1:1.1, and sintered at 750°C for 30 hours in a pure oxygen atmosphere to obtain a high-nickel ternary material coated with lithium aluminum silicate;
[0063] (4) The high-nickel ternary material coated with lithium aluminum silicate and 0.1% by mass ratio of ammonium flu...
Embodiment 3
[0066] The preparation method of the surface-coated lithium aluminum silicate and the high-nickel material doped with fluorine in the surface layer of this embodiment is carried out according to the following steps:
[0067] (1) Take an appropriate amount of aluminum sec-butoxide and ethyl silicate according to an equimolar ratio and dissolve them in ethanol, add ethanolamine with an equimolar amount of aluminum sec-butoxide as a dispersant, and obtain a clear and transparent solution after fully stirring. Set the volume to 0.1mol / L with deionized water in the volumetric flask; take a certain mass of nickel-cobalt-aluminum (LiNi 0.8 co 0.15 Al 0.05 o 2 ) material precursor, stirred at room temperature and mixed thoroughly to obtain a mixture;
[0068] (2) drying the mixture obtained in step (1) under vacuum conditions, pre-calcining the dried material at 600° C. for 6 hours in an air atmosphere, and then sieving to obtain the undersize;
[0069] (3) The obtained undersize ...
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